scholarly journals Initial development and gas exchange of Talisia subalbens (Mart.) Radlk. under different shading conditions

2011 ◽  
Vol 35 (1) ◽  
pp. 61-67 ◽  
Author(s):  
Fernanda Carlota Nery ◽  
Hilton Morbeck de Oliveira ◽  
Amauri Alves de Alvarenga ◽  
Sara Dousseau ◽  
Evaristo Mauro de Castro ◽  
...  

Ecophysiological studies under semi-controlled conditions in nurseries and greenhouses are essential to enable the use of native species to recover degraded areas and for commercial planting. Talisia subalbens (Mart) Radlk, 'cascudo', is a native fruiting species of the Cerrado on the verge of extinction. The ecophysiological performance of this species was evaluated in nursery conditions under different levels of shading (full sunshine, 30%, 50% and 70%). Initial growth, biomass allocation, gas exchange and chlorophyll content of the plants were analyzed. Full sunshine cultivated plants showed a higher accumulation of total, shoot, and root dry biomass. There was no significant difference in the root/shoot ratio among the treatments. Seedlings cultivated under full sunshine and 30% shading showed higher values for height, basal diameter, and leaf area. Differences in stomata conductance and photosynthesis rate were not observed among the different shading levels. Plants cultivated under 70% of shading had higher contents of chlorophyll a, b, and total. During the initial phase with higher levels of radiation were fundamental for the development of T. subalbens seedlings.

BMC Urology ◽  
2019 ◽  
Vol 19 (1) ◽  
Author(s):  
Yuki Kyoda ◽  
Koji Ichihara ◽  
Kohei Hashimoto ◽  
Ko Kobayashi ◽  
Fumimasa Fukuta ◽  
...  

Abstract Background Neuroendocrine (NE) cells may have an impact on the development and initial growth of benign prostatic hyperplasia (BPH) according to previous human studies. Methods To explore the relationship of NE cells and BPH development, we compared the density of NE cells and also prostatic weight in spontaneously hypertensive rats (SHR), which develop by aging, and Wistar-Kyoto rats (WKY) as control. The total weights of the epithelium and stroma in the ventral lobes of 8-, 12, 16-, 28- and 56-week-old SHR and WKY were calculated using Image J software. NE cells in the ventral prostatic ducts (VPd) were quantified using immunohistochemical staining for serotonin. Results Although there was no significant difference in the estimated total weight of the epithelium and stroma in the ventral lobes adjusted by body weight (ES weight) between the two groups at 8, 12 and 16 weeks of age, ES weight was significantly greater in the SHR group than in the WKT group at 28 and 56 weeks. The density of NE cells in the VPd decreased with aging in the WKY group, whereas it was sustained until 16 weeks and then decreased with aging in the SHR group. The difference in the density between the two groups was most marked at 16 weeks of age. Conclusion In the natural history of BPH, NE cells may play an important role in the initial development of BPH because sustained density of NE cells in the VPd precedes the development of prostatic hyperplasia.


1995 ◽  
Vol 25 (1) ◽  
pp. 8-17 ◽  
Author(s):  
Stephen J. McCanny ◽  
Martin J. Lechowicz ◽  
Bill Shipley ◽  
William H. Hendershot

We used sand culture to examine the effects of aluminum (Al3+) on gas exchange and growth in 1+0 Picearubens Sarg. seedlings. Growth solutions were prepared to match the elemental concentrations of the soil solutions in a declining Abiesbalsamea (L.) Mill.–P. rubens stand. In our first experiment, we used a four-way factorial design to examine the interactions between Al, pH, nutrients, and CO2. All plants were nitrogen deficient. Photosynthetic rate and instantaneous water-use efficiency both declined at 250 μmol•L−1 Al, as did the root/shoot ratio of the seedlings. Plant weight, however, was not significantly affected by the 10-fold increase in Al solution concentration. These results were robust across a range of experimental conditions, suggesting that other aspects of soil acidification, such as NO3 fertilization in N deficient soils, could counteract the toxic effects of Al. In a second experiment, we examined the effects of subtoxic concentrations of Al at two levels of nutrient cation availability. Unlike in a previous study, cation fertilization affected neither gas exchange nor growth. While the decreases in root/shoot ratio and growth were expected at 250 μmol•L−1 Al, the peak in growth rates for intermediate concentrations of Al (25–100 μmol•L−1) was not. The latter result was interpreted in light of the positive effects that low concentrations of Al are known to have on other species.


2020 ◽  
Vol 2020 ◽  
pp. 1-11 ◽  
Author(s):  
Juan Qi ◽  
Wenhui Liu ◽  
Ting Jiao ◽  
Ann Hamblin

The availability of suitable native plant species for local animal husbandry development and ecological restoration is limited on the Qinghai-Tibetan Plateau. Therefore, comparisons of the ecological adaptability of native species to alternative habitats and their introduction into new habitats are of high importance. This study is aimed at identifying the alteration in morphological and physiological characteristics by measuring photosynthetic physiology, nutrient content, and growth associated with adaptation of plants to conditions at different altitudes 2450, 2950, 3100, and 3300 m above sea level (a. s. l.) on the plateau. Seeds of the dominant grass, Elymus nutans, were collected from locations at these altitudes and grown at a test location of 2950 m a. s. l. Results indicated that altitude had no significant effect on plant height and root depth. However, the leaf area and total root surface area of plants derived from 2950 and 3300 m a. s. l. showed a parabolic response, being greater than those of plants derived from the lowest (2450 m) and highest (3300 m a. s. l.). Total (root plus shoot) dry matter reduced progressively from 2450 to 3300 m a. s. l, while root : shoot ratio increased progressively with altitude. Seed yield of plants originating from the test altitude (2950 m a. s. l) was significantly higher than at any other altitude, being 20% lower at 2450 m, and 38% and 58% less in populations originating from the higher altitudes (3100 and 3300 m a. s. l.). There was also a parabolic decline in response of Elymus nutans germplasm from 3100, 3300, and 2450 m, compared with plants from 2950 m a. s. l., to photosynthetic rate, total N, soluble sugar, and starch contents. Germplasm from 2450 m a. s. l. had significantly lower shoot and higher root carbon content, lower shoot nitrogen, and lower root carbon-to-nitrogen ratio compared with plants derived from the other three altitudes. It is suggested that the stable, genetically determined morphological and physiological features of ecotypes showed parabolic responses which means these ecotypes have become adapted to local habitats, whereas parameters such as dry matter, total root : shoot ratio, photosynthetic rate, and intercellular CO2 concentration of plants reflected phenotypic linear response to current abiotic conditions. It is postulated that introduced ecotypes from 2450, 3100, and 3300 m could adapt to the environment at 2950 m a. s. l. gradually. We conclude that the increased thermal regime experienced by plants introduced from high altitude to low altitude may facilitate the increased growth of Elymus nutans subtypes. It is important to preserve local strains of native species, or ecotypes, for reintroduction into degraded environments and to maintain the greatest ecosystem stability in the northeastern Tibetan Plateau.


FLORESTA ◽  
2020 ◽  
Vol 51 (1) ◽  
pp. 070
Author(s):  
Charles Rodrigo Belmonte Maffra ◽  
Felipe Turchetto ◽  
Edison Bisognin Cantarelli

The regularization of rural properties in the molds of the New Forest Code depends on the silvicultural study of the native species of the Brazilian biomes. The objective of this study was to evaluate the initial growth of five native tree species of the Atlantic Forest, with a view to their use in forest restoration projects. The following species were produced in the nursery, planted in the field, and evaluated for performance: Araucaria angustifolia, Mimosa scabrella, Trichilia claussenii, Schizolobium parahyba, and Cordia trichotoma. These species were distributed in two different areas, based on the randomized block experimental design. In experiment 1, the species A. angustifolia, M. scabrella, and C. trichotoma were distributed in three randomized blocks, each composed of 11 plants of each species. In experiment 2, the species A. angustifolia, M. scabrella, T. claussenii, and S. parahyba were distributed in three randomized blocks, each one composed of five plants of each species. In general, S. parahyba and M. scabrella showed faster development than the other species and, in this regard, are promising candidates for forest areas constitution or reconstitution in which there is interest in obtaining economic returns in less time. Araucaria angustifolia and T. claussenii showed relatively low development, whereas C. trichotoma showed intermediate development in relation to the other species studied. Despite their differences in performance, all species proved to be suitable for use in reforestation, mainly in the region where the study was developed.


2018 ◽  
Vol 2ndInt.Conf.AGR (Special Issue) ◽  
pp. 87-96
Author(s):  
Mardin Othman Othman ◽  
◽  
Aram Abbas Mohammed Mohammed ◽  

2018 ◽  
Vol 10 (7) ◽  
pp. 497
Author(s):  
Augusto Matias de Oliveira ◽  
Wéverson Lima Fonseca ◽  
Tiago De Oliveira Sousa ◽  
Hingrid Raiany Santos Teixeira ◽  
Fernandes Antonio de Almeida ◽  
...  

One of the difficulties of producing native species seedlings is slow growth. The objective of this study was to evaluate the initial development of Amburana cearensis (Allem.) A. C. Smith in relation to the concentration decomposed buriti stem substratum and nitrogen doses. A completely randomized design was used in a factorial arrangement of 3 × 5 (proportions of decomposed buriti stem × nitrogen doses), with six replicates. The treatments were formulated substrates comprised of decomposed buriti stem manually mixed with soil (Dystrophic Yellow Latosol) in three proportions (0, 25 and 50%) and five nitrogen doses (0, 100, 200, 300 and 400 mg dm-3) applied in treatments. There was no significant interaction between the DRM and ND factors. However, there was an isolated effect for the following variables: Plant height (PH), stem diameter (SD), leaf number (LN), leaf area (LA), dry mass of the aerial part (DMA) and root length (RL). The best concentrations of the substrate for the variables PH, LA and DMA were 25% and 50%, whereas for SD, LN and RL, the best result was 50%. ND and other variables had good responses under recommended doses ranging from a minimum of 264.82 mg dm-3, observed in DMA, and a maximum of 400 mg dm-3, observed in RL. Both factors positively the quality of umburana seedlings.


FLORESTA ◽  
2020 ◽  
Vol 50 (4) ◽  
pp. 1689
Author(s):  
Vanessa De Mauro Barbosa Freitas ◽  
Silvana De Paula Quintão Scalon ◽  
Daiane Mugnol Dresch ◽  
Sara Da Silva Bastos ◽  
Ana Paula Rissato de Souza ◽  
...  

The restoration of altered and degraded ecosystems will only be successful if research studies generate biological, ecological and physiological knowledge about the species of different Brazilian ecosystems. In order to produce quality seedlings, ecophysiological knowledge of the initial phase of the species is essential, since artificial shading can interfere with the growth rate and quality of the seedling. The aim of this study was to assess the effect of different levels of shading on the emergence, initial growth and photosynthetic metabolism of Ormosia arborea. The experiment was carried out with 30% and 70% shade and in full sun. At 60 days after sowing, non-destructive (gas exchange and chlorophyll fluorescence) and destructive (growth measures) analyzes were performed. 70% shade provides greater emergence, initial growth, gas exchange and photosynthetic efficiency of PS II. Cultivation at 0% shade (full sun) is not suitable for this species.


Nativa ◽  
2020 ◽  
Vol 8 (4) ◽  
pp. 476-483
Author(s):  
Bruno Vilela Faller ◽  
Rhayssa dos Santos Amorin ◽  
Israel Alves De Oliveira ◽  
Iselino Nogueira Jardim

A produção de mudas de jatobá (Hymenaea courbaril L.) é essencial para a conservação e restituição ao seu habitat natural. Entretanto a produção de mudas de espécie nativa ainda é pouco estudada. Portanto, o objetivo deste estudo foi avaliar o efeito de diferentes níveis de poda e doses de hidrogel no crescimento inicial de jatobá sob sombreamento. Mudas de jatobá com 90 dias de idade foram usadas no experimento. O delineamento experimental foi o esquema fatorial composto de três níveis de poda radicial (0,0; 25,0 e 50,0%) e cinco doses de hidrogel (0,0; 2,0; 4,0; 6,0 e 8,0 g L-1 de substrato) totalizando 15 tratamentos. Aos 105 dias após o transplantio em casa de vegetação, foram avaliados os parâmetros morfométricos e índices de crescimento. As mudas submetidas à poda radicial de 25,0% apresentaram maior crescimento após transplantio para sacos plásticos. O hidrogel também mostrou efeito positivo nas variáveis morfométricas avaliadas. Efeitos combinados do nível de poda radicial a 25,0% e doses de hidrogel na faixa de 3,0 a 4,0 g L-1 exerceram efeitos positivos no crescimento das variáveis morfométricas. Essas técnicas isoladas ou combinadas podem ser aplicadas por viveiristas para prolongar o tempo de manutenção de mudas de jatobá.Palavras-chave: Polímero hidroabsorvente; déficit hídrico; sistema radicial; Hymenaea courbaril L. EFFECT OF ROOT PRUNING AND HYDROGEL ON GROWTH OF JATOBA SEEDLINGS ABSTRACT:The production of jatoba (Hymenaea courbaril L.) seedlings is essential for the conservation and restitution of their natural habitat. However, the production of seedlings of native species is still little studied. Therefore, the objective of this study was to evaluate the effect of different levels of pruning and hydrogel doses on the initial growth of jatoba under shading. We used jatoba seedlings with 90 days of age in a factorial scheme consisting of three levels of root pruning (0.0, 25.0, and 50.0%) and five hydrogel doses (0.0, 2.0, 4.0, 6.0 and 8.0 g L-1 substrate) totalizing 15 treatments. At 105 days after transplanting in the greenhouse, morphometric parameters and growth rates were evaluated. Seedlings submitted to root pruning of 25.0% showed greater growth after transplanting to plastic bags. The hydrogel also showed a positive effect on the morphometric variables evaluated. The combined effects of 25.0% of root pruning level and doses of hydrogel in the range of 3.0 to 4.0 g L-1 exerted positive effects on the growth of morphometric variables. These isolated or combined techniques can be employed in a nursery to prolong the maintenance time of jatoba seedlings.Keywords: Hydroabsorbent polymer; water deficit; root system; Hymenaea courbaril L.


2018 ◽  
Vol 48 (1) ◽  
pp. 94-100 ◽  
Author(s):  
Allan Lopes Bacha ◽  
Pedro de Figueiredo Rocha Barbosa Martins ◽  
Pedro Luis da Costa Aguiar Alves ◽  
Rinaldo Cesar de Paula

Eucalyptus plants are sensitive to abiotic stresses in their initial growth, and nutritional deficiency is one of the most recurrent among them. Trinexapac-ethyl, which is a plant growth regulator, can positively affect eucalyptus, a response known as hormesis, possibly providing plants with greater tolerance to stress. The objective of this study was to evaluate the effect of trinexapac-ethyl at two application times, before planting (BP) or after planting (AP), in Eucalyptus urophylla under conditions of nutritional deficiency (NPK). Two experiments (one for each application time) were conducted simultaneously during 81 days after planting of eucalyptus in 15 L pots. The treatments consisted of three doses of trinexapac-ethyl (0, 30, and 60 g a.i.·ha−1) and four variations of nutrient supply: complete solution (NPK) and solutions without nitrogen (−N), without phosphorus (−P), and without potassium (−K). The variables of gas exchange, growth, and dry matter were evaluated. For both application times, trinexapac-ethyl had a positive effect on the root–shoot ratio of plants grown in −N and also positively affected some eucalyptus photosynthetic characteristics. In the AP application, the compound provided gains in height and dry matter, regardless of the nutrient supply. Under phosphorus deficiency, trinexapac-ethyl provided gains in total dry matter (BP) and leaf area (AP).


2019 ◽  
Vol 1 (4) ◽  
pp. 249-260
Author(s):  
Hoang Duy Vu ◽  
Loan Thi Nguyen ◽  
Tam Thi Bui ◽  
Thiem Thi Tran

The objectives of this study were to evaluate the effects of different fertilization ratios on the growth of pinto peanut (Arachis pintoi) propagated vegetatively under varying water regimes. The experiment was carried out in a net-house in a completely randomized design with three replicates. The N:P2O5:K2O ratios were applied at six levels: F1 (1:1:1), F2 (1:3:1), F3 (1:1:3), F4 (3:1:1), F5 (3:3:1), and F6 (3:3:3) while soil moisture included three different levels: 30% (W1), 60% (W2), and 100% (W3) field capacity. Water stress conditions were treated from 30-65 days after planting, and then the pots were irrigated to 100% field capacity. The results indicate that drought conditions significantly reduced (P<0.05) the growth of stolons, leaf appearance, number of secondary stolons, and dry matter, while the root/shoot ratio was higher compared to plants under well-watered conditions. There was no significant effect of the fertilization ratios on the number of secondary stolons. Higher-NP and NPK application ratios showed significant influences on the growth of A. pintoi under drought conditions by stimulating stolon lengths and the number of leaves, while the root/shoot ratio was decreased. Higher ratios of single fertilizers (N, P, or K) did not show a consistent effect on the growth of A. pintoi under drought conditions. The results suggest that a higher-NP fertilization ratio stimulates the growth of A. pintoi under both drought and well-irrigated conditions.


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